晋太元中,武陵人捕鱼为业。缘溪行,忘路之远近。忽逢桃花林,夹岸数百步,中无杂树,芳草鲜美,落英缤纷。渔人甚异之,复前行,欲穷其林。   林尽水源,便得一山,山有小口,仿佛若有光。便舍船,从口入。初极狭,才通人。复行数十步,豁然开朗。土地平旷,屋舍俨然,有良田、美池、桑竹之属。阡陌交通,鸡犬相闻。其中往来种作,男女衣着,悉如外人。黄发垂髫,并怡然自乐。   见渔人,乃大惊,问所从来。具答之。便要还家,设酒杀鸡作食。村中闻有此人,咸来问讯。自云先世避秦时乱,率妻子邑人来此绝境,不复出焉,遂与外人间隔。问今是何世,乃不知有汉,无论魏晋。此人一一为具言所闻,皆叹惋。余人各复延至其家,皆出酒食。停数日,辞去。此中人语云:“不足为外人道也。”(间隔 一作:隔绝)   既出,得其船,便扶向路,处处志之。及郡下,诣太守,说如此。太守即遣人随其往,寻向所志,遂迷,不复得路。   南阳刘子骥,高尚士也,闻之,欣然规往。未果,寻病终。后遂无问津者。 sh-3ll

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/* Copyright (c) 2016 MariaDB corporation

   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; version 2 of the License.

   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.

   You should have received a copy of the GNU General Public License
   along with this program; if not, write to the Free Software
   Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA */

#ifndef UNIQUE_INCLUDED
#define UNIQUE_INCLUDED

#include "filesort.h"

/*
   Unique -- class for unique (removing of duplicates).
   Puts all values to the TREE. If the tree becomes too big,
   it's dumped to the file. User can request sorted values, or
   just iterate through them. In the last case tree merging is performed in
   memory simultaneously with iteration, so it should be ~2-3x faster.
 */

class Unique :public Sql_alloc
{
  DYNAMIC_ARRAY file_ptrs;
  ulong max_elements;   /* Total number of elements that will be stored in-memory */
  size_t max_in_memory_size;
  IO_CACHE file;
  TREE tree;
 /* Number of elements filtered out due to min_dupl_count when storing results
    to table. See Unique::get */
  ulong filtered_out_elems;
  uint size;

  uint full_size;   /* Size of element + space needed to store the number of
                       duplicates found for the element. */
  uint min_dupl_count;   /* Minimum number of occurences of element required for
                            it to be written to record_pointers.
                            always 0 for unions, > 0 for intersections */
  bool with_counters;

  bool merge(TABLE *table, uchar *buff, size_t size, bool without_last_merge);
  bool flush();

public:
  ulong elements;
  SORT_INFO sort;
  Unique(qsort_cmp2 comp_func, void *comp_func_fixed_arg,
	 uint size_arg, size_t max_in_memory_size_arg,
         uint min_dupl_count_arg= 0);
  ~Unique();
  ulong elements_in_tree() { return tree.elements_in_tree; }
  inline bool unique_add(void *ptr)
  {
    DBUG_ENTER("unique_add");
    DBUG_PRINT("info", ("tree %u - %lu", tree.elements_in_tree, max_elements));
    if (!(tree.flag & TREE_ONLY_DUPS) && 
        tree.elements_in_tree >= max_elements && flush())
      DBUG_RETURN(1);
    DBUG_RETURN(!tree_insert(&tree, ptr, 0, tree.custom_arg));
  }

  bool is_in_memory() { return (my_b_tell(&file) == 0); }
  void close_for_expansion() { tree.flag= TREE_ONLY_DUPS; }

  bool get(TABLE *table);
  
  /* Cost of searching for an element in the tree */
  inline static double get_search_cost(ulonglong tree_elems,
                                       double compare_factor)
  {
    return log((double) tree_elems) * compare_factor / M_LN2;
  }  

  static double get_use_cost(THD *thd, uint *buffer, size_t nkeys, uint key_size,
                             size_t max_in_memory_size, double compare_factor,
                             bool intersect_fl, bool *in_memory);
  inline static int get_cost_calc_buff_size(size_t nkeys, uint key_size,
                                            size_t max_in_memory_size)
  {
    size_t max_elems_in_tree=
      max_in_memory_size / ALIGN_SIZE(sizeof(TREE_ELEMENT)+key_size);

    if (max_elems_in_tree == 0)
      max_elems_in_tree= 1;
    return (int) (sizeof(uint)*(1 + nkeys/max_elems_in_tree));
  }

  void reset();
  bool walk(TABLE *table, tree_walk_action action, void *walk_action_arg);

  uint get_size() const { return size; }
  size_t get_max_in_memory_size() const { return max_in_memory_size; }

  friend int unique_write_to_file(void* key, element_count count, void *unique);
  friend int unique_write_to_ptrs(void* key, element_count count, void *unique);

  friend int unique_write_to_file_with_count(void *key, element_count count,
                                             void *unique);
  friend int unique_intersect_write_to_ptrs(void *key, element_count count,
                                            void *unique);
};

#endif /* UNIQUE_INCLUDED */